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Published on: September 18, 2017
Disruption of heart sarcoglycan complex and severe cardiomyopathy caused by beta sarcoglycan mutations
R Barresi1, C Di Blasi, T Negri
1Department of Neuromuscular Diseases, Istituto Nazionale Neurologico "C Besta", Via Celoria 11, 20133 Milano, Italy.
Insights
Mutations in the beta sarcoglycan gene can cause severe cardiomyopathy in limb-girdle muscular dystrophy (LGMD). This study identifies a novel mutation and highlights the importance of monitoring cardiac function in LGMD patients.
Area of Science:
- Genetics and Molecular Biology
- Cardiology
- Neuromuscular Disorders
Background:
- Limb-girdle muscular dystrophy (LGMD) is a group of inherited muscle-wasting diseases.
- Sarcoglycanopathies, a subset of LGMD, result from defects in sarcoglycan protein complexes essential for muscle integrity.
- Cardiomyopathy is a known complication in some forms of LGMD.
Observation:
- Two young males with LGMD due to sarcoglycan deficiency presented with severe, fatal cardiomyopathy.
- Genetic analysis revealed compound heterozygosity for mutations in the beta sarcoglycan gene in both patients.
- Patient 2 exhibited more severe muscle defects and a complete absence of sarcoglycans in skeletal muscle.
Findings:
- A novel 4 bp deletion at the splice donor site of intron 2 in the beta sarcoglycan gene was identified in patient 2.
- Mutations in a single sarcoglycan gene, specifically beta sarcoglycan, were shown to disrupt the entire sarcoglycan complex in both skeletal and cardiac muscle.
- An 87 bp cryptic exon, resulting from alternative splicing, was discovered and may explain differential sarcoglycan expression in heart and skeletal muscle.
Implications:
- This study demonstrates that mutations in the beta sarcoglycan gene can cause cardiomyopathy, expanding the known phenotype of sarcoglycanopathies.
- The findings underscore the critical role of the sarcoglycan complex in cardiac muscle function.
- Regular cardiac monitoring is recommended for LGMD patients with sarcoglycan gene defects to detect and manage cardiomyopathy early.
Abstract:
Two young males with limb-girdle muscular dystrophy (LGMD) resulting from sarcoglycan deficiency died at 27 (patient 1) and 18 years (patient 2) of severe cardiomyopathy. Genetic analysis showed that they were compound heterozygotes for mutations in the beta sarcoglycan gene. One of these mutations, an 8 bp duplication in exon 3, was common to both patients. The second mutation in patient 2 was a 4 bp deletion at the splice donor site of intron 2, not reported previously. Patient 2 had more severe heart and skeletal muscle defects with faster deterioration; no sarcoglycans were detected in his skeletal muscle. The second mutation in patient 1, inferred because the unaffected father carries the 8 bp duplication, was not found. In patient 1, both heart and skeletal muscle were analysed and showed reduction of all sarcoglycans in both tissues and incorrect localisation of alpha and gamma sarcoglycans in heart. Therefore mutations in one sarcoglycan gene can disrupt the entire sarcoglycan complex in both skeletal and cardiac muscle. Differing expression patterns of sarcoglycan components in heart and skeletal muscle could be the result of alternatively spliced transcripts in these tissues. By sequencing an alternative transcript, highly expressed in the heart and skeletal muscle of patient 1, we found an 87 bp cryptic exon not previously reported. Although cardiomyopathy can result from mutations in alpha and gamma sarcoglycans, we show for the first time that the condition can also be caused by mutations in the beta sarcoglycan gene. This report therefore expands the phenotype of sarcoglycanopathies and suggests that cardiac function in LGMD patients with defective sarcoglycan expression should be monitored.
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